Deletion of ARPKD-associated Pkhd1 gene in mice results in decreased Tfap2b expression and eye abnormalities
Abstract
Abstract Genome-wide association studies report single nucleotide polymorphisms (SNPs) in the PKHD1-TFAP2B genomic interval are associated with primary open-angle glaucoma (POAG) but do not distinguish the causal gene. While neural crest cell (NCC)-specific Tfap2b inactivation causes anterior segment dysgenesis (ASD) and congenital glaucoma (CG), PKHD1 mutations cause autosomal recessive polycystic kidney disease. We now show that Pkhd1 del3-67/del3-67 mice also exhibit CG and ASD. Integrating genetic, epigenetic, bioinformatic and developmental analyses, we show that Pkhd1 del3-67/del3-67 mice lack Tfap2b and AP-2β expression in a subset of periocular mesenchymal cells at E13.5 and its derivatives. Our data suggest the Pkhd1 del3-67 deletion disrupts features of the Pkhd1-Tfap2b genomic architecture essential for Tfap2b cell-specific function. Consistent with this model, Pkhd1 del3-67/+ ;Tfap2b ko/+ mice develop ASD and lack Tfap2b and AP-2β in relevant cell-types. Our results suggest POAG-associated SNPs at this complex locus may impact disease risk by altering TFAP2B regulatory landscapes, providing a mechanistic link and highlighting regulatory complexity of disease-associated regions.
Article Details
Authors (11)
Yu Ishimoto
Luis F. Menezes
Naoki Nakaya
Karla Barbosa-Sabanero
Yukihiro Horie
Teruhiko Yoshida
Jeff M. Reece
Fang Zhou
Institute of Hydrobiology, Chinese Academy of Sciences
Stanislav Tomarev
Retinal Ganglion Cell Biology Lab, National Eye Institute, National Institutes of Health
Laura Kerosuo
Gregory G. Germino